| Literature DB >> 35632907 |
Fei Fan1,2, Chao Cai1,3,2, Wei Wang1,3,2, Lei Gao1,2, Jun Li1,2, Jia Li1,2, Feifei Gu1,2, Tiantian Sun1,2, Jianghua Li1,2, Chunxia Li1,3,2, Guangli Yu1,3,2.
Abstract
The approach developed here offers distinct and well-defined glycopolymers for deciphering the biological roles of natural bioactive polysaccharides. Fucose monomers were chemically synthesized and decorated with specific sulfation patterns including unsulfate, monosulfate, disulfate, and trisulfate groups. The six fucoidan-mimetic glycopolymers (18-23) were successfully fabricated through microwave-assisted ring-opening metathesis polymerization (ROMP) in an emulsion system. The molecular weight (Mw), polydispersity index (PDI), and multiple functional groups were fully characterized by SEC-MALLS-RI and NMR spectroscopy. Three glycopolymers (19, 21, 23) associated with 2-O-sulfation exhibited better inhibitory effects on the H1N1 virus, while glycopolymers (19, 20) with monosulfate groups were more effective against the H3N2 virus. These findings would promote the development of novel anti-influenza A virus (IAV) drugs based on natural fucoidans.Entities:
Year: 2018 PMID: 35632907 DOI: 10.1021/acsmacrolett.8b00056
Source DB: PubMed Journal: ACS Macro Lett ISSN: 2161-1653 Impact factor: 6.903